[1] Chi Nan, Wang Chaofan, Li Weiping, et al. Research progress of underwater visible light communication technology based on blue/green LED [J]. Journal of Fudan University: Natural Science (复旦学报(自然科学版)), 2019, 58(05): 537-548(in Chinese).[2] Yi Congqin, Zhou Ruyan. Research on application of key technologies of underwater wireless optical communication [J]. Communication Technology(通信技术), 2017, 50(10): 2202-2205(in Chinese). [3] Fei Chao, Zhang Junwei, Zhang Gouwu, et al. Demonstration of 15-meter 7.33-Gbps 450-nm underwater wireless optical discrete multitone transmission using post nonlinear equalization [J]. Journal of Lightwave Technology, 2018, 36(5): 728-734.[4] Gabriel C, Khalighi M, Bourennane S, et al. Channel modeling for underwater optical communication[C]. The 2011 IEEE Globecom Workshops, 2011.[5] Ghassemlooy Z, Arnon S, Uysal M, et al. Emerging optical wireless communications- advances and challenges[J]. IEEE Journal on Selected Areas in Communications, 2015, 5(33): 1738-1749.[6] Zhao Jing, Zhao Shanghong, Zhao Weihu, et al. BER performance analysis of M-ary PPM over exponentiated weibull distribution for airborne laser communications[J]. Optical Technology, 2017, 30(84): 658-663.[7] Wang Hongxi, He Fengtao, Zhan Fei, et al. Design of underwater LED blue light communication system based on PPM[J]. Optical Commuication Technology(光通信技术), 2018, 42(07): 46-50(in Chinese).[8] Wu Tsaichen, Chi Yuchieh, Wang Huaiyung, et al. Blue laser diode enables underwater communication at 12.4 Gbps[J]. Scientific Reports, 2017, 21(7): 40480.[9] Kong Meiwei, Lv Weichao, Ali Tarig, et al. 10m 9.51 Gb/s RGB laser diodes-based WDM underwater wireless optical communication[J]. Optical Express, 2017, 25(17): 20829-20834.[10] Wang Jingjing, Tian Chengfeng, Yang Xinghai, et al. Underwater wireless optical communication system using a 16-QAM modulated 450-nm laser diode based on an FPGA[J]. Applied Optics, 2019(58): 4553-4559. [11] Gabriel C, Khalighi M, Bourennane S, et al. Investigation of suitable modulation techniques for underwater wireless optical communication[C]. Wireless Communication, 2012.[12] Al H, Oubel A, Hm O, et al. Real-time video transmission over different underwater wireless optical channels using a directly modulated 520 nm laser diode[J]. Optical Communications and Networking, 2017, 12(9): 826-832.[13] Gong Yulin. Research on the performance of FSO system based on OQPSK modulation[J]. Optical Communication Technology(光通信技术), 2016, 40 (05): 29-31(in Chinese).[14] Gardner F M. A BPSK/QPSK Timing-error Detector for Sampled Receivers[J]. IEEE Transactions. on Communications, 1986, 34(3): 423-429.[15] Federica S, Alcatel L. Impact of self noise on tracking performance of non-data-aided digital timing recovery[J]. Journal of Lightwave Technology, 2015, 33(18): 3755-3762.[16] Atsushi M, Fujifilm C. A study of timing recovery for high-recording-density tape systems [J]. IEEE Transactions on Magnetics, 2015, 51(11): 1973-1978.[17] Wang Fei, Yin Yafang, Yang Yi. Analysis of the influence of the laser transmission distance of the sea channel on the received power[J]. Optical Communication Research(光通信研究), 2017, 23(2): 23-26(in Chinese).[18] Xie Shuhao. Research and implementation of high speed OQPSK digital demodulation synchronization technology[D]. Chengdu: University of Electronic Science and Technology of China, 2018.谢书豪. 高速OQPSK数字解调同步技术研究与实现[D]. 成都:电子科技大学, 2018.[19] Yang Dewei, Yan Chaoxing, Wang Hua, et al. Extension to gardner timing error detector for QPSK signals[C]. International Conference on Wireless Communications and Signal Processing, 2010. |